суббота, 4 октября 2014 г.

THE REASON OF PRECESSION OF THE EQUINOXES

THE REASON OF PRECESSION OF THE EQUINOXES

The precession of the equinoxes - in other words is the antecedence of the equinoxes.
The precession of the equinoxes (Latin Praecessio aequinoctiorum) – is the historical name for the gradual displacement of points of the vernal and autumnal equinoxes (i.e. the points of intersection of the celestial equator and the ecliptic) towards the annual motion of the Sun. In other words, every year the vernal equinox comes a little earlier than in the previous year. 
Both equinoxes are preceded - and the spring and autumn. And this anticipation should be explained by the fact that the planet is gradually heated.
Generally, once we should remember that moment of equinox (any) corresponds to the time when the total temperature of the substance of both hemispheres is equal in magnitude. That is why in the equinoxes both hemispheres are at the same distance from the Sun.
The largest amount of solar radiation is accumulated by the planet's core. This is explained by the existence at any celestial body the centripetal Field of Attraction, because of the action of which elementary particles accumulated on the surface of the chemical elements of the surface layers of the planet flow down, moving towards the center of the planet. Namely because of this flowing of particles down, there occurs a cooling of the surface layers of the planet and a heating of the core. The more heated the planet's core, the less the value of its Field of Attraction. The less is the Field of Attraction, the slower the layers of the planet cool – i.e. the slower particles flow downwards. It turns out that the more the planet's core is heated, the faster there occurs the warming of a hemisphere. Substance of each hemisphere is external (surface) with respect to the central part of the planet.
An amount of substance in the composition in both hemispheres is the same. And the heating of the core of the planet occurs incrementally – i.e. in every next moment temperature of the substance becomes more and more. That's why when there is a change of the position of poles, and another hemisphere comes to replace a warmed hemisphere, starting to warm up, it warms up a little bit faster. I.e. a little earlier than it was last year, the temperature of this hemisphere compared with the temperature of the second hemisphere. And this just marks the moment of the equinox. Because of this the days of equinoxes occur all the time a little earlier than before.

пятница, 3 октября 2014 г.

“PLANETS ARE FRIED ON A SKEWER”

“PLANETS ARE FRIED ON A SKEWER”

Due to astronomical observations, we know that every planet in the solar system rotates around its own axis. And we know that all planets have one or another angle of inclination of the rotation axis to the ecliptic plane. It is also known that during the year each of two hemispheres of any planet changes its distance from the Sun. But by year-end a position of the planets relative to the sun is the same as a year ago (or rather to say, almost the same). There are also such facts that astronomers do not known, but nevertheless, that exist. For example, there is a constant, but smooth changing in the angle of inclination of the axis of each planet. The angle increases. And, in addition, there is a constant and gradual increase in the distance between the planets and the Sun. Is there a connection between all these phenomena?
Answer - yes, of course. All these phenomena are due to existence in the planets as Fields of Attraction and Fields of Repulsion, due to the characteristics of their location in the composition of the planets, as well as changes in their value.
We are so accustomed to the knowledge that our Earth rotates on its axis, as well as to the fact that the northern and southern hemisphere of the planet for a year then move away, then approach the Sun. And with the rest of the planets everything is the same. But why planets behave this way? What motivates them?
Let's start with the fact that any of the planets can be compared with an apple impaled on a skewer and roasted over a fire. The role of “fire” in this case performs the sun, and a “skewer” is an axis of rotation of a planet. Of course, people often roast meat, but here we look at the experience of vegetarians, because fruits often have a rounded shape, which makes them similar to the planets. If we fry an apple over a fire, we do not move it around the source of fire. Instead, we rotate the apple, as well as change the position of the skewer relative to the fire. The same thing is happening with the planets. They rotate and change the position of the “skewer” throughout the year relative to the sun, warming, so their “sides”.
The reason that the planets revolve around their axes, as well as throughout the year the poles periodically change the distance from the Sun, is about the same according to which we rotate the apple over the fire. The analogy with a skewer was not chosen randomly. We always keep the least deep fried (the least-heated) area of an apple over the fire. Planets also always tend to turn to the sun by their least heated side, the total gravity field of which is the greatest compared to other areas. However, the expression "tend to turn" does not mean that the way it really happens. The trouble is that any of planets at the same time has just two sides, the gravity of which to the Sun is greatest. This is the poles of the planet. This means that from the moment of birth of the planet, both poles simultaneously sought to take a position to be closest to the Sun.
Yes, when we talk about the attraction of the planet to the Sun, it should be noted that different areas of the planet are attracted to it in different ways, i.e. in varying degrees. At least - the equator. To the greatest extent – the poles. Note - the number of poles is two.
I.e. if two areas tend to be on the same distance from the center of the Sun. The poles throughout the existence of the planet continue to balance, constantly competing with each other for the right to occupy a position closer to the Sun. But even if one pole temporarily wins and gets closer to the Sun than other, this other, continues to “graze” it, seeking to turn the planet so as to be closer to the luminary. This struggle between two poles directly affects the behavior of the whole planet. It’s difficult for the poles to approach to the Sun. However, there is a factor facilitating their task. This factor is the existence of the angle of inclination of the rotation axis to the ecliptic plane.
However, in the beginning of life planets had no inclination of the axis. The cause of emergence of inclination is the attraction of one of the poles of the planet by one of the poles of the Sun.
Let’s consider how inclination of the axes of rotation of a planet appears.
When the substance from which the planets formed is ejected from the Sun, an ejection does not necessarily occur in the equatorial plane of the Sun. Even a small deviation from the equatorial plane of the sun results in that the formed planet is located to one of the poles of the sun closer than to another. And to be more precise, it is only one of the poles of the formed planet is closer to one of the poles of the Sun. For this reason, namely this pole of the planet experiences greater attraction from the pole of the Sun, to whom it was closer.
As a result, one of the hemispheres immediately turned toward the Sun. So an initial inclination of axis of rotation appeared at the planet. That hemisphere, which was closer to the Sun, respectively, immediately began to receive more solar radiation. And because of this the hemisphere from the outset was heated to a greater extent. Greater heating of one hemisphere of the planet becomes the reason that the total gravity field of this hemisphere decreases. I.e. during the heating of the hemisphere approached the Sun began to decrease its tendency to move closer to the pole of the Sun, attraction of which made ​​the planet to be closer. And the more this hemisphere warms, the more leveled the gravitation of both poles of the planet, of each to “its closest” pole of the Sun. As a result, the heated hemisphere turns away from the sun more and more, and the more chilled begins to approach. But note, as this change of poles happened (happens). Very peculiar.
After the planet was formed from material ejected by the Sun, and now revolves around, it immediately begins to be heated by solar radiation. This heating makes it rotate around its own axis. Initially an axial tilt was not. Because of this, the equatorial plane is warming to the greatest extent. Because of this, namely in the equatorial region not disappeared Field of Repulsion appears in the first turn and its magnitude is greatest from the outset. In areas adjacent to the equator with time not relieved Field of Repulsion also appears. A value of the squares of the areas, on which there is a Field of Repulsion, is demonstrated by an angle of inclination of axis.
But the sun also has a constantly existing Field of Repulsion. And, like the planets, in the area of the Sun's equator the value of its Field of Repulsion is greatest. And since all planets at the moment of ejection and formation were located in the Sun's equator, they revolved thus in the zone where the Field of Repulsion of the Sun is greatest. Precisely because of this, because of collision of the biggest in magnitude Fields of Repulsion of the planet and the Sun, the changing of the position of the hemispheres of the planet can’t occur by vertical. I.e. the lower hemisphere can’t just “go” back and up and the upper - down and forward.
  The planet in the process of changing hemispheres implements a “workaround”. It rotates so that its own equatorial Field of Repulsion at least extent collides with the equatorial Field of Repulsion of the Sun. I.e. the plane in which the Field of Repulsion of the planet is located at an angle to the plane in which there is the equatorial Field of Repulsion of the Sun. This allows to the planet to save available distance to the Sun. Otherwise, if there was the coincidence of the planes in which the Fields of Repulsion of the planet and of the Sun manifest, the planet would have been severely set from the Sun.
That's the way the planets change the position of their hemispheres relative to the sun - sideways, sideways ...
The time from the summer solstice to the winter for any of the hemispheres is a period of gradual heating of this hemisphere. Accordingly, the time from the winter solstice to summer is a period of gradual cooling. The moment of summer solstice corresponds to the lowest total temperature of the chemical elements in this hemisphere. The moment of winter solstice corresponds to the highest total temperature of the composition of chemical elements in the composition of this hemisphere. I.e. in the moments of the summer and winter solstices that hemisphere is drawn to the Sun that chilled at this moment most of all. Amazing, is not it? After all, as our everyday experience says us that everything should be the opposite - in summer it’s hot and in winter it’s cold. But in this case we are talking not about the temperature of the surface layers of the planet, and about the temperature of the entire thickness of the substance.
But the moments of vernal and autumnal equinoxes even as correspond to the time when the total temperature of both hemispheres is equal. That is why at this time both hemispheres are at the same distance from the Sun.
And finally we say a few words about the role of heating of planets by solar radiation. Let's do a little thought experiment during which we look at what would have happened if the stars do not emit elementary particles and not heated thereby surrounding them planets. If the Sun did not heat the planets, they would always be turned to the Sun by one side, like the Moon, the Earth satellite always facing the Earth by the same side. Absence of heating firstly would deprive the planets of necessary to rotate around its own axis. Secondly, if there was no heating, there would not be a consistent rotation of the planets to the Sun then one then other hemisphere during the year. Thirdly, if there was no heating of the planets by the Sun, the axis of rotation of the planets would not be bent to the ecliptic plane. Although at the same time all planet would have continued to revolve around the sun (a star). And fourth, the planet would not have increased gradually the distance to the sun.

THE CAUSE OF ELLIPTICAL SHAPE OF ORBITS OF THE PLANETS

THE CAUSE OF ELLIPTICAL SHAPE OF ORBITS OF THE PLANETS

The reason for which the planets move in orbits having an ellipse shape is very simple. Planets are rejected by attraction of the Galactic Nucleus. The Nucleus of the Galaxy is a celestial body, much larger than any star. Namely it gave rise to all stars of our Galaxy, ejecting the substance from itself.

Aphelion of orbit indicates the direction exactly on the Galactic Nucleus.

DISTANCES OF THE PLANETS FROM THE SUN

DISTANCES OF THE PLANETS FROM THE SUN

Mercury - 58 million km;
Venus - 108 million km;
Earth - 150 million km;
Mars - 228 million km;
Jupiter - 778 million km;
Saturn - 1.43 billion km;
Uranium - 2.87 billion km;
Neptune - 4.5 billion miles;
Pluto - 5.95 billion miles.
The distance of planets to the center of the star (spawned them), as well as their rotation, is related to the formation of the Field of Repulsion (ethereal shield) in the heated area of the planet. However, unlike the speed of rotation of the planet, the distance is caused not by to heating rate and directly by the magnitude of the Field of Repulsion arising in response to the heating by solar radiation.
The larger this magnitude, i.e. more is the rate of emission of ether, the farther from the star a planet will be located.
All planets in our solar system have now one or another angle of inclination of their rotation axis to the ecliptic plane. Inclination of the axis of rotation is due to the fact that the substance of the planet warms by solar radiation (accumulates particles with Fields of Repulsion). Substance in the equatorial plane of the planet warmed up to the greatest extent. This is explained by the fact that at the beginning of life on the planet, when it just started to rotate, the axis of rotation is perpendicular to the line drawn through the center of the Sun and the center of the planet. So, the inclination of the axis indicates that at the planet in the equatorial region and adjacent areas there is formed a continuously existing Field of Repulsion. The Field of Repulsion of a planet is formed by particles with the same Fields accumulated on the surface of chemical elements of the atmosphere - lingering in the composition of the surface layers of the planet. Actually, it is because of this constant Field of Repulsion planet “lean”.
For what it's been said? Yes to the fact that when we talk about a Field of Repulsion (ethereal shield), the value of which determines the distance of the planet to the Sun, then we are talking about a Field of Repulsion that exists in the planet's equator, as it is the largest in magnitude.
I.e. the magnitude of exactly this Field of Repulsion arising in the equatorial plane, and just will allow to estimate the distance between the planet and the sun. The greater the magnitude of this field Repulsion – i.e. the higher is the rate of emission of ether by the equator of the plane, the greater the distance between the planet and the Sun.
The planets in the solar system can be likened to balloons. The air inside the balloon dome is heated by the burner flame and thus the balloon is moving away from the planet's surface (i.e. from its center). Only in the case of planets the Sun itself plays the role of the burner.
Let's think about why all planets move away from the Sun.
First, we should remind ourselves that the farther away from the Sun, the smaller the number of solar particles reaching this point.


So, during the heating of the substance of equator region, the Field of Repulsion of this area is growing. Due to the fact that solar particles accumulated in the surface layers linger there longer. Increase of Field of Repulsion says that the rate of emission of ether becomes greater than the rate at which ether moves to the Sun (i.e. greater than the sun's Gravity field at a given point). If the planet emits ether faster than it is attracted by the sun, it begins to move away. However, as already mentioned, with increasing of the distance from the sun there is a decrease of solar particles reaching the planet. This means that the rate of distancing of any planet from the Sun gradually decreases with increase of its distance from the Sun. I.e. the distancing of planets slows down, as they move away. We can say that there is a feedback mechanism. The farther from the Sun, the less of solar particles reach the planet, and due to this the magnitude of the Field of Repulsion formed by the planet decreases. As a result, there is no fast departure of the planet from the Sun. No, all planets move away gradually, slowly.

THE SEASONAL (EXOTERIC) AND ASTRONOMICAL (ESOTERIC) CLASSIFICATION OF MONTHS

THE SEASONAL (EXOTERIC) AND ASTRONOMICAL (ESOTERIC) CLASSIFICATION OF MONTHS

The modern world lives according to the Julian calendar, according to which in the year there are 12 months, of which three belong to the winter season, 3 - to the summer, 3 – to the autumn, and 3 - to the spring. And, for the northern hemisphere months relating to any of 4 seasons are specularly opposite to the months characterizing the same seasons in the southern hemisphere.
But it is well-known facts. And now let us turn to what science does not know.
Usually people classify months in accordance with the annually recurring processes of a general lowering of the temperature of the surface layers of the Earth (autumn, winter), and of a general increase in temperature (spring, summer). In autumn and winter the earth's surface is gradually cooled and in spring and summer - is gradually heated. September, October and November attributed to the autumn months, to winter - December, January and February. March, April, May belong to spring. To summer - June, July and August. This is an exoteric systematization. It is known even to younger students.
With regard to the esoteric classification of the esoteric, it is known only to occultists, and even then not for everybody. Anyway, people studying in the Trans-Himalayan Esoteric School are aware of its existence and use this information in the course of their meditations.
We will tell you more details.
If we classify months in accordance with astronomical observations, then we should divide them into four groups of three months in each. Three months would be attributed to the winter solstice, three - for the summer, three - to the autumnal equinox, and the last three - for the spring.
Moreover, the days of solstices and equinoxes themselves would represent central “cutoffs” in each of the four groups.
But at the same time there would be the next problem. The days of solstices and equinoxes are not located in the middle of the month - all they are in the early 20's numbers. I.e. we should shift the beginning of all months so that the days of solstices and equinoxes would come about on the 15th numbers of the months.
But humanity keeps a calendar relying not on astronomical observations and in accordance with the processes of annual change of heat and cold on the earth's surface.
Why do not coincide with each other the astronomical (esoteric) and seasonal (exoteric) classification of months?
For the northern hemisphere the winter season can be correlated with the time of the winter solstice, the summer season - with time of the summer solstice, autumn - with the period of the autumnal equinox and the spring - with the period of the vernal equinox. For the southern hemisphere a correlation of the seasons and moments of solstices and equinoxes will be specularly opposite.
We remind you that the solstice (summer or winter, it does not matter) - is the time when one of the hemispheres of the most turned to the Sun (close to it) and other at this time maximum turn away (far from it). At the same time, the equinox (spring or fall) is the time when both hemispheres are from the Sun at the same distance
However, for each of the hemispheres, each of the seasons “lags behind” more than a month against a group of 3 months, belonging to one or another solstice or equinox. For example, February for the northern hemisphere - this is the last of the winter months. But from the astronomical point of view, February is the first month referring to the group of vernal equinox months. Or, for example, May - for the northern hemisphere is the last month of spring. But from the astronomical point of view this is the first month referring to the group of summer solstice months. Similar information we can lead to August, and November. August in the northern hemisphere - this is the last month of summer. But with the astronomical positions - this is the first month belonging to the group of the autumnal equinox. November is the last month of autumn. And in astronomical terms - this is the first month of the winter solstice.
What is the cause of this “displacement” of the seasonal classification regarding astronomical? The whole point is in the features of the heating and cooling of the surface and intermediate layers of the planet by solar particles.
In the article “Planets are fried on a spit” we will discuss in detail the reasons forcing the hemispheres of the planets periodically change the distance to the center of the Sun. We will talk about the main points.
As part of any planet we conditionally have allocated a core, surface layers and layers, intermediate between the core and surface layers. However, it is really just a convention. No boundaries between the layers, one layer smoothly passes into another. In the composition of surface layers and in the composition of intermediate and in the core there are layers, located near to the center of the planet, and there are layers located farther from it. Solar photons falling on the planet at first are accumulated (absorbed) by chemical elements of the overlying surface layers. And then, under influence of the planet Field of Attraction “gravitate” into the layers located below. And so they gradually move from one layer to another, farther to the center. As a result, in the planet's core the concentration of solar photons is the largest. Only particles with Fields of Repulsion are able to raise the temperature of the chemical elements absorbing them. The photons with the Fields of Repulsion predominate in the composition of the solar radiation reaching any of the planets. That is why an accumulation by planets of solar particles leads to the total increase in temperature within the planet. The process of “settling” of photons from more superficial layers into the underlying takes certain time – i.e. it does not occur instantaneously.
And now we will talk directly on why the seasonal classification of months is displaced relative to the astronomical classification.
In general it can be said that the weather of each month depends firstly on the total amount of solar photons received at a given time by the earth surface, and secondly, it depends on the degree of heating of the lower, deeper layers of the planet.
The reason for changing the distance between the hemispheres and the center of the Sun is a change of the total temperature of the deep surface and also of intermediate layers in each of the hemispheres.
The moment of the winter solstice in the northern hemisphere is time of the highest total temperature of deep superficial and intermediate layers. This time is the turning point. Since then, this temperature begins to fall more, which leads to increase in the total Field of Attraction of the hemisphere as a whole. Because of this, gradually decreases its distance from the Sun.
From the moment of the summer solstice to the winter temperature of deep superficial and intermediate layers of the northern hemisphere is growing due to the accumulation of solar photons (solar energy). And as the temperature increases, the hemisphere gradually moves away from the Sun. Seclusion of the hemisphere leads to the fact that the superficial layers receive less and less solar photons. The Earth's surface cools more and more - do not forget that the underlying layers due to their gravitation constantly take away photons.
Thus, during the time of the summer solstice to the winter in the intermediate and superficial layers of the northern hemisphere opposite processes occur. The Earth's crust is gradually cooled, and intermediate layers are heated more and more.
Underlying superficial and intermediate layers are heated for the simple reason that they receive solar photons from the upper surface layers. It takes time to the “settling” of photons from the surface to the intermediate. Later the photons of the intermediate layers gravitate to the center of the planet. Settling of photons leads to the cooling of layers where from they are moving downwards, and to the heating of layers in which they are coming down.
It turns out that in the period from the summer solstice to the winter, due to an approximation of the northern hemisphere to the sun, chemical elements of the earth's crust in this hemisphere receive more and more solar photons. In the future, these photons will start their way down, coming down into the intermediate layers in the period from the summer solstice to the winter.
This is the essence of explanation why the greatest heating of the intermediate layers of the northern hemisphere occurs in the period from the summer solstice to the winter. Please note - on the surface of the planet at this time is getting colder, and in depth - warmer and hotter.
Do not forget that even when the hemisphere is increasingly turning away from the Sun, its crust continues to accumulate solar photons, although in much smaller quantities.
Photons need time to move through the substance of the planet down to its center. Moreover, the scale of the surface layers of the earth within which we usually estimate the temperature of Earth's surface substance and talking about warming or cooling is very small in comparison with the scale of the entire planet. We can assume that the humanity “does not plunge” into the planet generally deeper than 1 kilometer.
In the period from the summer solstice to the winter, when the northern hemisphere is increasingly turning away from the Sun, its surface layers receive less and less solar photons.
They are deposited down with a delay. I.e. to ensure that the photons passed from the surface layers to the intermediate, takes time. The process of "settling" of photons that fall into the surface layers during the period from summer to winter will continue after the winter and will pass to the spring. And as from summer to winter the amount of solar radiation received by the planet gradually decreased, and an amount of accumulated photons in the crust is little, the intermediate layers in the process of settling also get them a little, and the temperature decreases. As a consequence - the northern hemisphere cools. And as it cools, then its Field of Attraction increases. And it approaches to the Sun. And the most chilling accounts at the time of the summer solstice – in this time into the intermediate layers there occurs the settling of photons accumulated by the crust at the winter solstice, and there were very little of them.
It turns out that the planet is delayed by six months in its response to the heating of the surface by solar photons.
And now we again will talk about why the seasonal classification offset relative to the astronomical classification of months.
The moment of the summer solstice corresponds to the minimum distance from the North Pole to the center of the Sun. At this time, the surface layers of the Earth's surface of the northern hemisphere receive the greatest amount of solar particles with Fields of Repulsion (as well as of particles with Fields of Attraction). After the moment of summer solstice the earth's surface begins to be heated less and less.
Then why, oddly enough, July is the hottest month, and August is also hot enough? The thing is that by this time the deep layers of the surface layers of the planet are already warmed enough. I.e. these layers have received enough photons accumulated by the most superficial layers during the period from the winter solstice to summer. Warming of the deep layers in the composition of the surface layers of the earth is the cause of reducing the Field of Attraction of the planet. For this reason, during the night time atmosphere, hydrosphere and solid surface of the crust do not so much cool, as it happened if deep layers would not be heated. We recall that the cooling of substances on the earth’s surface is due to "settling" down of accumulated photons with Fields of Repulsion – i.e. due to their moving toward the center of the planet.
Thus, because of the not so strong cooling of the earth's surface at night, July is the hottest month (despite the fact that it is the last month, referring to the period of the summer solstice). And August by the same reason does not be attributed to the autumn, but to the summer season.
At the same time, May refers to the spring season, and not to the summer, and just because of the fact that by this time the deeper layers in the composition of the surface layers still not heated enough, so at night the earth's surface cools to a greater extent than that observed, for example, in August. While at the same time, May refers to the group of months of the summer solstice and the earth's surface at this time already receives enough of solar particles.
Similar information we can lead to other three seasons.
Аналогичную информацию можно привести для остальных трех сезонов.
The fall season as it is known consists of three months - September, October and November. But only two of them - September and October are really the autumn. In September, the vernal equinox occurs. And October immediately follows September. The first month of those, relating to autumnal equinox is August. However, as mentioned, due to the high temperature of the surface layers of the Earth, it belongs to the summer season.
As for November, then it is not yet so cold to attribute this month for the winter season. Although namely November is the first month of those, that “surround” the winter solstice. November is the first true winter month. But this is only by the esoteric classification.
In exoteric systematization December opens winter. But as you know, the winter solstice is in December. On December 22 in the northern hemisphere there is the longest night and the shortest day. So according to the esoteric classification, December is the second month of winter, but not the first.
January is the second month of winter. But in reality it is the last. And February traditionally closing the winter season, in fact, opens the spring. It belongs to the vernal equinox. It is the first of three spring months of the esoteric classification. However, due to the fact that at this time the northern hemisphere is still quite far away from the Sun, and its surface is still cold (receives a little of solar photons), February not for nothing is attributed to winter.
In late March, the vernal equinox occurs. March is the second month of spring, according to the esoteric classification, but the first in accordance with the Julian calendar.
April is the last month, referring to the period of the vernal equinox. But according to tradition, this is the second month of spring.

And here we are again back to May. It is the last month of spring, as is commonly believed. But it is the first month of the summer solstice in accordance with astronomical observations. In May the surface layers have warmed up not enough that people view it as the summer season.

RETROGRADE AND PROGRADE ROTATION OF PLANETS

RETROGRADE AND PROGRADE ROTATION OF PLANETS

Due to astronomical observations, we know that most of planets in our solar system revolve in the prograde direction – i.e. counterclockwise. And this direction of rotation coincides with the direction of rotation of the Sun. However, two planets in the solar system rotate in the retrograde direction – i.e. clockwise. Venus and Uranus rotate by such way.
Let's examine why not all planets of the solar system rotate in the same direction.
As already mentioned, the reason for starting rotation of each planet is an action of two factors – a tendency of the hemisphere heated by the star (the sun), to move away from it and an attraction of the opposite, cooler hemisphere by the Nucleus of galaxy. As already mentioned, the rotation of the planet began only when the planet was located “laterally” of the Sun (star) to the Nucleus of the Galaxy. So, prograde or retrograde the rotation of the planet became, it depended on only one factor. And namely from which “side” of the Sun the planet was located at the start of the rotation. We can conditionally defined designate one “side” of the Sun as a right, and other - as a left. For example, if you look at the Nucleus of Galaxy from the position of an observer on the Sun, then the “side” of the Sun on the right is the right and one on the left is the left.
So, if the planet at the start of rotation was on the right “side” of the Sun, then it began to rotate counter-clockwise – i.e. forward. Most of the planets in our solar system were in such situation. If the planet was located on the left “side” of the Sun, then it began to rotate in a clockwise direction – i.e. in the opposite direction. Venus and Uranus were in this strategy.
But why the planets did not change their direction of rotation after they were in the course of rotation around the sun on its other “side”.
And here's why.
The magnitude of the Force of Attraction that arises in any planet or satellite in the solar system composition in relation to the Nucleus of Galaxy is always less than the Force of Attraction that arises with respect to the Sun (i.e. to a star). And the reason for this is the difference in distances. The Nucleus of the Galaxy is very far. And so, even despite of its huge size (much larger than of the Sun), the magnitude of the Force of Attraction arising in relation to it, is less.
When the planet did not yet rotate, one its hemisphere completely turned to the sun, and another was completely away from it. This means that the turned away hemisphere did not “feel” attraction of the Sun (precisely because it turned away from it). There was only attraction of the Nucleus of the Galaxy. But once the heated hemisphere began to turn away from the Sun, starting thus the planet's rotation, at the same time the colder, turned away hemisphere began gradually to come back to the illuminated side. And once that happens, the Force of Attraction directed toward the Sun begins to act on it, and it is greater than the Force of Attraction to the Nucleus. As a result, after the rotation of the planet began, its direction does not change. And all because of that now, all time, when chilled on the night side area begins to come back to the illuminated side, the Gravity Field of the area forces this area to move in the direction of the Sun. And so, there is a rotation of the planet. We recall that on the illuminated side of a planet a Field of Repulsion is forming, and that, in fact, makes the heated area to move away from the Sun. 
As you understand, we can talk about the prograde and retrograde rotation not only of planets, but also of stars and Galactic Nuclei.

REASONS FOR BEGINNING OF THE ROTATION OF PLANETS

REASONS FOR BEGINNING OF THE ROTATION OF PLANETS

The rotation of planets, which seems so natural, was not peculiar to the planets immediately after they arose. Special conditions were required for it started.
Planets are formed from material ejected from stars. The temperature of stars is low compared to the temperature of Nuclei of Galaxies and Supergalaxies, especially compared to the Central Sun of the universe, and this is because of the smaller number of chemical elements in their composition (which reduces the degree of transformation caused by gravity). Therefore, a significant amount of material sufficient for the formation of planets is ejected by stars only in the plane of the equator. Namely in the plane of the equator of a star there is an accumulation of the most number of particles with Fields of Repulsion emitted by the Nucleus of Galaxy, gave birth to this star. At the moment of birth - ejection from the sun - the planet can be with whatever side of the Sun in relation to the Nucleus of Galaxy. A planet necessarily begins to rotate some time after its birth. But for the beginning of rotation it is necessary that the planet does not shield by the sun from the action of gravity of Galaxy nucleus or is not on the line connecting the Sun with the Galactic Nucleus. In any other position the planet necessarily starts to rotate. However, planets after their occurrence begin to revolve around the sun – i.e. move around in a circle. Therefore, even if at the moment of time the planet was located on a straight line drawn through the centers of the Sun and the Nucleus of galaxy (behind or in front of the Sun), due to the orbital motion the planet after a while will go to the position “laterally”.
All stars emit elementary particles. Therefore after formation the planets begin to be bombarded and heated by the sun. But only that hemisphere is heated that faces the sun. At the same time, the other hemisphere, the opposite of what turned to the sun is not heated and therefore turns colder. And accordingly, the total Field of Attraction of the night hemisphere, not facing the sun, is larger compared to the heated hemisphere.
So, at the planets at the moment of their location "laterally" of the Sun that created them their not heated hemisphere, located on the night side, is attracted by the Nucleus of Galaxy. The Force of Attraction, caused by the Nucleus of Galaxy, due to the large distance to it is less than Forces of Attraction caused by the Sun. But, anyway, this Force of Attraction exists and exerts its influence on all celestial bodies in the solar system. Simultaneously with this the heated hemisphere of the planet begins to move away from the Sun. And here it is the gravitation from the side of the Galactic Nucleus decides “the fate of the planet”. Or rather, this attraction is a reason for starting rotation of the planet. I.e. as a result, the planet revolves around its own axis, as the hemisphere opposite heated, colder, tends to move in the direction of the Galaxy Nucleus, and the heated hemisphere moves away from the Sun.

The phrase “laterally” we hope you guessed it, means that the planet is not shielded by the sun, gave birth to it, from the Nucleus of Galaxy, and is not on the line connecting the centers of the Nucleus of Galaxy and the Sun.